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Breathe, then breed [复制链接]

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发表于 2009-3-6 08:18 |只看该作者 |正序浏览 |打印
Klevecz/NAS& }5 y* v8 f' ]" ~

* e  \5 ]5 K# B: @1 x+ k9 nNew results from Robert Klevecz, Douglas Murray, and colleagues (City of Hope Medical Center, Duarte, CA) reveal that DNA is synthesized when it is least likely to be hit with oxidative damage.
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Damaging oxidizing agents are produced by respiration. In yeast, respiration is periodic—it alternates in 40-min cycles with a stage of nonrespiration called the reductive phase. This oscillation was detected decades ago, but it was never thought to be connected to cell cycle progression. Now, Klevecz shows that both S-phase entry and transcription are controlled by the respiratory oscillation.
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+ ~6 [$ c, ^. H6 J% \Microarray analysis revealed that nearly 90% of transcribed yeast genes were maximally transcribed in two peaks during the reductive phase—one early and one late. The transcription of fewer than 700 genes, in contrast, peaked during respiration.
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0 L, p  Q; t$ q' NThe respiration cycle also gated entry into S-phase. Although only 10% of cells in any given respiration cycle entered S-phase, all those that did entered just as the reductive phase began. Klevecz hypothesizes that the timing strategy evolved when earth's atmosphere changed from a reducing to an oxidizing environment. "Single-stranded DNA is very susceptible to oxidative damage," he says. "So the idea would be to avoid damage to DNA, and perhaps to RNA as well. If it's not broken, you don't have to fix it." He is still searching for a synchronized mammalian cell culture system to test whether oscillations are widely conserved.% w  r9 ]9 k; G+ X( I

( X: g1 Y  |4 R% \8 x, vKlevecz warns that the design of typical treated-versus-control experiments must involve time series sampling and take phase into account, or else significant differences might be due solely to differences in phase. "The cell is in essence an oscillator," he says. "Normal rules for cause and effect break down in systems that are oscillatory."/ h# }4 B' P7 u! Z1 v. j

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3 j% u% X7 w/ u& E4 lKlevecz, R.R., et al. 2004. Proc. Natl. Acad. Sci. USA. 10.1073/pnas.0306490101.(DNA is made (green diagonals) during the)

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发表于 2025-6-14 19:12 |只看该作者
呵呵 那就好好玩吧~~~~  

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发表于 2025-6-5 02:42 |只看该作者
太棒了!  

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发表于 2025-5-19 14:47 |只看该作者
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干细胞分化技术

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发表于 2025-5-19 11:07 |只看该作者
说的真有道理啊!

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发表于 2025-4-17 23:33 |只看该作者
佩服佩服啊.  

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发表于 2025-3-28 08:14 |只看该作者
干细胞库  

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发表于 2025-3-25 12:25 |只看该作者
神经干细胞

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发表于 2025-3-11 09:20 |只看该作者
嘿...反了反了,,,,  

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发表于 2025-2-25 11:00 |只看该作者
一楼的位置好啊..  
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